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生菜叶绿体中生物活性人硫氧还蛋白 1 蛋白的生产。

Production of biologically active human thioredoxin 1 protein in lettuce chloroplasts.

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology (NAIST), Ikoma, Nara 630-0192, Japan.

出版信息

Plant Mol Biol. 2011 Jul;76(3-5):335-44. doi: 10.1007/s11103-011-9745-5. Epub 2011 Feb 3.

Abstract

The production of human therapeutic proteins in plants provides opportunities for low-cost production, and minimizes the risk of contamination from potential human pathogens. Chloroplast genetic engineering is a particularly promising strategy, because plant chloroplasts can produce large amounts of foreign target proteins. Oxidative stress is a key factor in various human diseases. Human thioredoxin 1 (hTrx1) is a stress-induced protein that functions as an antioxidant against oxidative stress, and overexpression of hTrx1 has been shown to suppress various diseases in mice. Therefore, hTrx1 is a prospective candidate as a new human therapeutic protein. We created transplastomic lettuce expressing hTrx1 under the control of the psbA promoter. Transplastomic plants grew normally and were fertile. The hTrx1 protein accumulated to approximately 1% of total soluble protein in mature leaves. The hTrx1 protein purified from lettuce leaves was functionally active, and reduced insulin disulfides. The purified protein protected mouse insulinoma line 6 cells from damage by hydrogen peroxide, as reported previously for a recombinant hTrx1 expressed in Escherichia coli. This is the first report of expression of the biologically active hTrx1 protein in plant chloroplasts. This research opens up possibilities for plant-based production of hTrx1. Considering that this expression host is an edible crop plant, this transplastomic lettuce may be suitable for oral delivery of hTrx1.

摘要

在植物中生产人类治疗性蛋白提供了低成本生产的机会,并最大限度地降低了潜在人类病原体污染的风险。叶绿体遗传工程是一种特别有前途的策略,因为植物叶绿体可以大量产生外源目标蛋白。氧化应激是各种人类疾病的一个关键因素。人类硫氧还蛋白 1(hTrx1)是一种应激诱导蛋白,作为抗氧化剂对抗氧化应激,并且已经证明 hTrx1 的过表达可以抑制小鼠的各种疾病。因此,hTrx1 是一种有前途的新型人类治疗性蛋白候选物。我们创建了在 psbA 启动子控制下表达 hTrx1 的叶绿体转基因生菜。转基因植物正常生长且具有繁殖能力。hTrx1 蛋白在成熟叶片中积累到约总可溶性蛋白的 1%。从生菜叶片中纯化的 hTrx1 蛋白具有功能活性,并还原胰岛素二硫键。如先前报道的在大肠杆菌中表达的重组 hTrx1 一样,纯化的蛋白可保护小鼠胰岛素瘤系 6 细胞免受过氧化氢的损伤。这是 hTrx1 生物活性蛋白在植物叶绿体中表达的第一个报告。这项研究为基于植物的 hTrx1 生产开辟了可能性。鉴于这种表达宿主是一种可食用的作物植物,这种叶绿体转基因生菜可能适合 hTrx1 的口服递送。

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